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W4 - 17:用于基准测试高级电子结构方法的多样化且高置信度的雾化能数据集。

W4-17: A diverse and high-confidence dataset of atomization energies for benchmarking high-level electronic structure methods.

作者信息

Karton Amir, Sylvetsky Nitai, Martin Jan M L

机构信息

School of Molecular Sciences, The University of Western Australia, Perth, Western Australia, 6009, Australia.

Department of Organic Chemistry, Weizmann Institute of Science, Rehovot, 76100, Israel.

出版信息

J Comput Chem. 2017 Sep 15;38(24):2063-2075. doi: 10.1002/jcc.24854. Epub 2017 Jul 4.

Abstract

Atomization reactions are among the most challenging tests for electronic structure methods. We use the first-principles Weizmann-4 (W4) computational thermochemistry protocol to generate the W4-17 dataset of 200 total atomization energies (TAEs) with 3σ confidence intervals of 1 kJ mol . W4-17 is an extension of the earlier W4-11 dataset; it includes first- and second-row molecules and radicals with up to eight non-hydrogen atoms. These cover a broad spectrum of bonding situations and multireference character, and as such are an excellent benchmark for the parameterization and validation of highly accurate ab initio methods (e.g., CCSD(T) composite procedures) and double-hybrid density functional theory (DHDFT) methods. The W4-17 dataset contains two subsets (i) a non-multireference subset of 183 systems characterized by dynamical or moderate nondynamical correlation effects (denoted W4-17-nonMR) and (ii) a highly multireference subset of 17 systems (W4-17-MR). We use these databases to evaluate the performance of a wide range of CCSD(T) composite procedures (e.g., G4, G4(MP2), G4(MP2)-6X, ROG4(MP2)-6X, CBS-QB3, ROCBS-QB3, CBS-APNO, ccCA-PS3, W1, W2, W1-F12, W2-F12, W1X-1, and W2X) and DHDFT methods (e.g., B2-PLYP, B2GP-PLYP, B2K-PLYP, DSD-BLYP, DSD-PBEP86, PWPB95, ωB97X-2(LP), and ωB97X-2(TQZ)). © 2017 Wiley Periodicals, Inc.

摘要

原子化反应是电子结构方法中最具挑战性的测试之一。我们使用第一性原理的魏茨曼4(W4)计算热化学协议来生成包含200个总原子化能(TAE)的W4 - 17数据集,其3σ置信区间为1 kJ·mol 。W4 - 17是早期W4 - 11数据集的扩展;它包括含有多达八个非氢原子的第一和第二周期分子及自由基。这些涵盖了广泛的键合情况和多参考特征,因此是高精度从头算方法(例如CCSD(T)复合程序)和双杂化密度泛函理论(DHDFT)方法参数化和验证的优秀基准。W4 - 17数据集包含两个子集:(i)183个系统的非多参考子集,其特征为动态或适度的非动态相关效应(记为W4 - 17 - nonMR),以及(ii)17个系统的高多参考子集(W4 - 17 - MR)。我们使用这些数据库来评估各种CCSD(T)复合程序(例如G4、G4(MP2)、G4(MP2)-6X、ROG4(MP2)-6X、CBS-QB3、ROCBS-QB3、CBS-APNO、ccCA-PS3、W1、W2、W1-F12、W2-F12、W1X-1和W2X)和DHDFT方法(例如B2-PLYP、B2GP-PLYP、B2K-PLYP、DSD-BLYP、DSD-PBEP86、PWPB95、ωB97X-2(LP)和ωB97X-2(TQZ))的性能。© 2017威利期刊公司

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